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Lower Extremity Joint Kinematics of Shod, Barefoot and Simulated Barefoot Treadmill Running

机译:下肢,赤脚和模拟赤脚跑步机跑步的下肢关节运动学

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International Journal of Exercise Science 11(1): 717-729, 2018. Barefoot running is considered to decrease injury risk, but is not always practical, particularly while running on a fitness center treadmill. The purpose of this study was to compare the kinematics of shod, barefoot, and simulated barefoot running. Twelve subjects (age = 21.1 ± 1.2 years) who regularly run on a treadmill for fitness participated in the study. After a warm up, each runner ran on a Biodex RTM 400 treadmill set at 7.4 mph (approximately 3.3 m/s) in their own shoes, barefoot, and while running “like they were barefoot” in their own shoes. Sixteen reflective markers were affixed to each subject to use PlugInGait (Vicon) to determine three-dimensional body landmark coordinates and to compute lower extremity joint angles. Values at touchdown and during stance were averaged over ten strides for analysis. Repeated measures ANOVA was implemented to determine differences based on running condition (p < 0.05) and post hoc testing was performed with an adjustment for multiple comparisons (p<0.05/3). At touchdown, ankle angle values significantly differed based on condition (6.2 ± 5.9° vs. -4.0 ± 12.0° vs, -0.2 ± 13.3°; p = 0.004 for shod, barefoot and simulated barefoot running, respectively) indicating that when simulating barefoot running the subjects altered their foot strike pattern. Stride frequency differed between shod and barefoot running (1.415±0.068 Hz vs. 1.457±0.065 Hz; p = 0.001) but the simulated barefoot condition did not differ from the shod condition. The runners were able to simulate an important element of barefoot running, but they did not completely mimic their barefoot running pattern.
机译:国际运动科学杂志11(1):717-729,2018.赤脚跑步被认为可以减少受伤的风险,但并不总是可行的,尤其是在健身中心跑步机上跑步时。这项研究的目的是比较短裤,赤脚和模拟赤脚跑步的运动学。十二名定期在跑步机上健身的受试者(年龄= 21.1±1.2岁)参加了该研究。热身后,每位跑步者都赤脚穿着Biodex RTM 400跑步机以每小时7.4英里(约3.3 m / s)的速度跑鞋,赤脚地跑步,就像自己赤脚一样跑步。将16个反射标记贴到每个对象上,以使用PlugInGait(Vicon)确定三维人体界标坐标并计算下肢关节角度。在十个步幅上平均触地得分和站立期间的值以进行分析。实施重复测量方差分析以根据运行条件确定差异(p <0.05),并进行事后测试,并进行多次比较调整(p <0.05 / 3)。触地时,踝部角度值会根据条件而有显着差异(6.2±5.9°与-4.0±12.0°与-0.2±13.3°;对于shod,赤脚和模拟赤脚跑步,p = 0.004)表明在模拟赤脚时跑步者改变了他们的步行方式。步态频率在穿鞋和赤脚跑步之间有所不同(1.415±0.068 Hz与1.457±0.065 Hz; p = 0.001),但模拟的赤脚状况与穿鞋状况没有差异。跑步者能够模拟赤脚跑步的重要元素,但他们并未完全模仿赤脚跑步的方式。

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